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Three-dimensional real-time<i>in vivo</i>magnetic particle imaging

Physics in Medicine and Biology · 2009 · Vol. 54(5) · pp. L1–L10
J. WeizeneckerBernhard GleichJürgen RahmerHannes DahnkeJ. Borgert

Abstract

Magnetic particle imaging (MPI) is a new tomographic imaging method potentially capable of rapid 3D dynamic imaging of magnetic tracer materials. Until now, only dynamic 2D phantom experiments with high tracer concentrations have been demonstrated. In this letter, first in vivo 3D real-time MPI scans are presented revealing details of a beating mouse heart using a clinically approved concentration of a commercially available MRI contrast agent. A temporal resolution of 21.5 ms is achieved at a 3D field of view of 20.4 x 12 x 16.8 mm(3) with a spatial resolution sufficient to resolve all heart chambers. With these abilities, MPI has taken a huge step toward medical application.

Characterization and Applications of Magnetic NanoparticlesElectrical and Bioimpedance TomographyGeomagnetism and Paleomagnetism StudiesMagnetic particle imagingImaging phantomTemporal resolutionTRACERImage resolutionContrast (vision)In vivoParticle (ecology)Computer sciencePreclinical imaging

MeSH terms

AnimalsContrast MediaFemaleMagnetic Resonance ImagingPhantoms, ImagingImaging, Three-DimensionalMice

Funding

  • Bundesministerium für Bildung und Forschung
Citations
636
FWCI
23.27
field-weighted impact
References
27
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100%
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